i82557.c revision 1.14 1 1.14 sommerfe /* $NetBSD: i82557.c,v 1.14 1999/12/04 02:02:30 sommerfeld Exp $ */
2 1.1 thorpej
3 1.1 thorpej /*-
4 1.1 thorpej * Copyright (c) 1997, 1998, 1999 The NetBSD Foundation, Inc.
5 1.1 thorpej * All rights reserved.
6 1.1 thorpej *
7 1.1 thorpej * This code is derived from software contributed to The NetBSD Foundation
8 1.1 thorpej * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
9 1.1 thorpej * NASA Ames Research Center.
10 1.1 thorpej *
11 1.1 thorpej * Redistribution and use in source and binary forms, with or without
12 1.1 thorpej * modification, are permitted provided that the following conditions
13 1.1 thorpej * are met:
14 1.1 thorpej * 1. Redistributions of source code must retain the above copyright
15 1.1 thorpej * notice, this list of conditions and the following disclaimer.
16 1.1 thorpej * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 thorpej * notice, this list of conditions and the following disclaimer in the
18 1.1 thorpej * documentation and/or other materials provided with the distribution.
19 1.1 thorpej * 3. All advertising materials mentioning features or use of this software
20 1.1 thorpej * must display the following acknowledgement:
21 1.1 thorpej * This product includes software developed by the NetBSD
22 1.1 thorpej * Foundation, Inc. and its contributors.
23 1.1 thorpej * 4. Neither the name of The NetBSD Foundation nor the names of its
24 1.1 thorpej * contributors may be used to endorse or promote products derived
25 1.1 thorpej * from this software without specific prior written permission.
26 1.1 thorpej *
27 1.1 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
28 1.1 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
29 1.1 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
30 1.1 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
31 1.1 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
32 1.1 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
33 1.1 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
34 1.1 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
35 1.1 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
36 1.1 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
37 1.1 thorpej * POSSIBILITY OF SUCH DAMAGE.
38 1.1 thorpej */
39 1.1 thorpej
40 1.1 thorpej /*
41 1.1 thorpej * Copyright (c) 1995, David Greenman
42 1.1 thorpej * All rights reserved.
43 1.1 thorpej *
44 1.1 thorpej * Redistribution and use in source and binary forms, with or without
45 1.1 thorpej * modification, are permitted provided that the following conditions
46 1.1 thorpej * are met:
47 1.1 thorpej * 1. Redistributions of source code must retain the above copyright
48 1.1 thorpej * notice unmodified, this list of conditions, and the following
49 1.1 thorpej * disclaimer.
50 1.1 thorpej * 2. Redistributions in binary form must reproduce the above copyright
51 1.1 thorpej * notice, this list of conditions and the following disclaimer in the
52 1.1 thorpej * documentation and/or other materials provided with the distribution.
53 1.1 thorpej *
54 1.1 thorpej * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
55 1.1 thorpej * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
56 1.1 thorpej * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
57 1.1 thorpej * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
58 1.1 thorpej * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
59 1.1 thorpej * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
60 1.1 thorpej * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
61 1.1 thorpej * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
62 1.1 thorpej * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
63 1.1 thorpej * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
64 1.1 thorpej * SUCH DAMAGE.
65 1.1 thorpej *
66 1.1 thorpej * Id: if_fxp.c,v 1.47 1998/01/08 23:42:29 eivind Exp
67 1.1 thorpej */
68 1.1 thorpej
69 1.1 thorpej /*
70 1.14 sommerfe * Device driver for the Intel i82557 fast Ethernet controller,
71 1.14 sommerfe * and its successors, the i82558 and i82559.
72 1.1 thorpej */
73 1.1 thorpej
74 1.1 thorpej #include "opt_inet.h"
75 1.1 thorpej #include "opt_ns.h"
76 1.1 thorpej #include "bpfilter.h"
77 1.1 thorpej #include "rnd.h"
78 1.1 thorpej
79 1.1 thorpej #include <sys/param.h>
80 1.1 thorpej #include <sys/systm.h>
81 1.1 thorpej #include <sys/mbuf.h>
82 1.1 thorpej #include <sys/malloc.h>
83 1.1 thorpej #include <sys/kernel.h>
84 1.1 thorpej #include <sys/socket.h>
85 1.1 thorpej #include <sys/ioctl.h>
86 1.1 thorpej #include <sys/errno.h>
87 1.1 thorpej #include <sys/device.h>
88 1.1 thorpej
89 1.1 thorpej #include <vm/vm.h> /* for PAGE_SIZE */
90 1.1 thorpej
91 1.1 thorpej #if NRND > 0
92 1.1 thorpej #include <sys/rnd.h>
93 1.1 thorpej #endif
94 1.1 thorpej
95 1.1 thorpej #include <net/if.h>
96 1.1 thorpej #include <net/if_dl.h>
97 1.1 thorpej #include <net/if_media.h>
98 1.1 thorpej #include <net/if_ether.h>
99 1.1 thorpej
100 1.1 thorpej #if NBPFILTER > 0
101 1.1 thorpej #include <net/bpf.h>
102 1.1 thorpej #endif
103 1.1 thorpej
104 1.1 thorpej #ifdef INET
105 1.1 thorpej #include <netinet/in.h>
106 1.1 thorpej #include <netinet/if_inarp.h>
107 1.1 thorpej #endif
108 1.1 thorpej
109 1.1 thorpej #ifdef NS
110 1.1 thorpej #include <netns/ns.h>
111 1.1 thorpej #include <netns/ns_if.h>
112 1.1 thorpej #endif
113 1.1 thorpej
114 1.1 thorpej #include <machine/bus.h>
115 1.1 thorpej #include <machine/intr.h>
116 1.1 thorpej
117 1.1 thorpej #include <dev/mii/miivar.h>
118 1.1 thorpej
119 1.1 thorpej #include <dev/ic/i82557reg.h>
120 1.1 thorpej #include <dev/ic/i82557var.h>
121 1.1 thorpej
122 1.1 thorpej /*
123 1.1 thorpej * NOTE! On the Alpha, we have an alignment constraint. The
124 1.1 thorpej * card DMAs the packet immediately following the RFA. However,
125 1.1 thorpej * the first thing in the packet is a 14-byte Ethernet header.
126 1.1 thorpej * This means that the packet is misaligned. To compensate,
127 1.1 thorpej * we actually offset the RFA 2 bytes into the cluster. This
128 1.1 thorpej * alignes the packet after the Ethernet header at a 32-bit
129 1.1 thorpej * boundary. HOWEVER! This means that the RFA is misaligned!
130 1.1 thorpej */
131 1.1 thorpej #define RFA_ALIGNMENT_FUDGE 2
132 1.1 thorpej
133 1.1 thorpej /*
134 1.1 thorpej * Template for default configuration parameters.
135 1.1 thorpej * See struct fxp_cb_config for the bit definitions.
136 1.1 thorpej */
137 1.1 thorpej u_int8_t fxp_cb_config_template[] = {
138 1.1 thorpej 0x0, 0x0, /* cb_status */
139 1.1 thorpej 0x80, 0x2, /* cb_command */
140 1.1 thorpej 0xff, 0xff, 0xff, 0xff, /* link_addr */
141 1.1 thorpej 0x16, /* 0 */
142 1.1 thorpej 0x8, /* 1 */
143 1.1 thorpej 0x0, /* 2 */
144 1.1 thorpej 0x0, /* 3 */
145 1.1 thorpej 0x0, /* 4 */
146 1.1 thorpej 0x80, /* 5 */
147 1.1 thorpej 0xb2, /* 6 */
148 1.1 thorpej 0x3, /* 7 */
149 1.1 thorpej 0x1, /* 8 */
150 1.1 thorpej 0x0, /* 9 */
151 1.1 thorpej 0x26, /* 10 */
152 1.1 thorpej 0x0, /* 11 */
153 1.1 thorpej 0x60, /* 12 */
154 1.1 thorpej 0x0, /* 13 */
155 1.1 thorpej 0xf2, /* 14 */
156 1.1 thorpej 0x48, /* 15 */
157 1.1 thorpej 0x0, /* 16 */
158 1.1 thorpej 0x40, /* 17 */
159 1.1 thorpej 0xf3, /* 18 */
160 1.1 thorpej 0x0, /* 19 */
161 1.1 thorpej 0x3f, /* 20 */
162 1.1 thorpej 0x5 /* 21 */
163 1.1 thorpej };
164 1.1 thorpej
165 1.1 thorpej void fxp_mii_initmedia __P((struct fxp_softc *));
166 1.1 thorpej int fxp_mii_mediachange __P((struct ifnet *));
167 1.1 thorpej void fxp_mii_mediastatus __P((struct ifnet *, struct ifmediareq *));
168 1.1 thorpej
169 1.1 thorpej void fxp_80c24_initmedia __P((struct fxp_softc *));
170 1.1 thorpej int fxp_80c24_mediachange __P((struct ifnet *));
171 1.1 thorpej void fxp_80c24_mediastatus __P((struct ifnet *, struct ifmediareq *));
172 1.1 thorpej
173 1.1 thorpej inline void fxp_scb_wait __P((struct fxp_softc *));
174 1.1 thorpej
175 1.1 thorpej void fxp_start __P((struct ifnet *));
176 1.1 thorpej int fxp_ioctl __P((struct ifnet *, u_long, caddr_t));
177 1.7 thorpej int fxp_init __P((struct fxp_softc *));
178 1.7 thorpej void fxp_rxdrain __P((struct fxp_softc *));
179 1.7 thorpej void fxp_stop __P((struct fxp_softc *, int));
180 1.1 thorpej void fxp_watchdog __P((struct ifnet *));
181 1.7 thorpej int fxp_add_rfabuf __P((struct fxp_softc *, bus_dmamap_t, int));
182 1.1 thorpej int fxp_mdi_read __P((struct device *, int, int));
183 1.1 thorpej void fxp_statchg __P((struct device *));
184 1.1 thorpej void fxp_mdi_write __P((struct device *, int, int, int));
185 1.13 joda void fxp_autosize_eeprom __P((struct fxp_softc*));
186 1.1 thorpej void fxp_read_eeprom __P((struct fxp_softc *, u_int16_t *, int, int));
187 1.1 thorpej void fxp_get_info __P((struct fxp_softc *, u_int8_t *));
188 1.1 thorpej void fxp_tick __P((void *));
189 1.3 thorpej void fxp_mc_setup __P((struct fxp_softc *));
190 1.1 thorpej
191 1.1 thorpej void fxp_shutdown __P((void *));
192 1.9 sommerfe void fxp_power __P((int, void *));
193 1.1 thorpej
194 1.7 thorpej int fxp_copy_small = 0;
195 1.7 thorpej
196 1.10 sommerfe int fxp_enable __P((struct fxp_softc*));
197 1.10 sommerfe void fxp_disable __P((struct fxp_softc*));
198 1.10 sommerfe
199 1.1 thorpej struct fxp_phytype {
200 1.1 thorpej int fp_phy; /* type of PHY, -1 for MII at the end. */
201 1.1 thorpej void (*fp_init) __P((struct fxp_softc *));
202 1.1 thorpej } fxp_phytype_table[] = {
203 1.1 thorpej { FXP_PHY_80C24, fxp_80c24_initmedia },
204 1.1 thorpej { -1, fxp_mii_initmedia },
205 1.1 thorpej };
206 1.1 thorpej
207 1.1 thorpej /*
208 1.1 thorpej * Set initial transmit threshold at 64 (512 bytes). This is
209 1.1 thorpej * increased by 64 (512 bytes) at a time, to maximum of 192
210 1.1 thorpej * (1536 bytes), if an underrun occurs.
211 1.1 thorpej */
212 1.1 thorpej static int tx_threshold = 64;
213 1.1 thorpej
214 1.1 thorpej /*
215 1.1 thorpej * Wait for the previous command to be accepted (but not necessarily
216 1.1 thorpej * completed).
217 1.1 thorpej */
218 1.1 thorpej inline void
219 1.1 thorpej fxp_scb_wait(sc)
220 1.1 thorpej struct fxp_softc *sc;
221 1.1 thorpej {
222 1.1 thorpej int i = 10000;
223 1.1 thorpej
224 1.1 thorpej while (CSR_READ_1(sc, FXP_CSR_SCB_COMMAND) && --i)
225 1.2 thorpej delay(2);
226 1.1 thorpej if (i == 0)
227 1.1 thorpej printf("%s: WARNING: SCB timed out!\n", sc->sc_dev.dv_xname);
228 1.1 thorpej }
229 1.1 thorpej
230 1.1 thorpej /*
231 1.1 thorpej * Finish attaching an i82557 interface. Called by bus-specific front-end.
232 1.1 thorpej */
233 1.1 thorpej void
234 1.1 thorpej fxp_attach(sc)
235 1.1 thorpej struct fxp_softc *sc;
236 1.1 thorpej {
237 1.1 thorpej u_int8_t enaddr[6];
238 1.1 thorpej struct ifnet *ifp;
239 1.1 thorpej bus_dma_segment_t seg;
240 1.1 thorpej int rseg, i, error;
241 1.1 thorpej struct fxp_phytype *fp;
242 1.1 thorpej
243 1.1 thorpej /*
244 1.1 thorpej * Allocate the control data structures, and create and load the
245 1.1 thorpej * DMA map for it.
246 1.1 thorpej */
247 1.1 thorpej if ((error = bus_dmamem_alloc(sc->sc_dmat,
248 1.1 thorpej sizeof(struct fxp_control_data), PAGE_SIZE, 0, &seg, 1, &rseg,
249 1.1 thorpej 0)) != 0) {
250 1.1 thorpej printf("%s: unable to allocate control data, error = %d\n",
251 1.1 thorpej sc->sc_dev.dv_xname, error);
252 1.1 thorpej goto fail_0;
253 1.1 thorpej }
254 1.1 thorpej
255 1.1 thorpej if ((error = bus_dmamem_map(sc->sc_dmat, &seg, rseg,
256 1.2 thorpej sizeof(struct fxp_control_data), (caddr_t *)&sc->sc_control_data,
257 1.1 thorpej BUS_DMA_COHERENT)) != 0) {
258 1.1 thorpej printf("%s: unable to map control data, error = %d\n",
259 1.1 thorpej sc->sc_dev.dv_xname, error);
260 1.1 thorpej goto fail_1;
261 1.1 thorpej }
262 1.2 thorpej bzero(sc->sc_control_data, sizeof(struct fxp_control_data));
263 1.1 thorpej
264 1.1 thorpej if ((error = bus_dmamap_create(sc->sc_dmat,
265 1.1 thorpej sizeof(struct fxp_control_data), 1,
266 1.1 thorpej sizeof(struct fxp_control_data), 0, 0, &sc->sc_dmamap)) != 0) {
267 1.1 thorpej printf("%s: unable to create control data DMA map, "
268 1.1 thorpej "error = %d\n", sc->sc_dev.dv_xname, error);
269 1.1 thorpej goto fail_2;
270 1.1 thorpej }
271 1.1 thorpej
272 1.1 thorpej if ((error = bus_dmamap_load(sc->sc_dmat, sc->sc_dmamap,
273 1.2 thorpej sc->sc_control_data, sizeof(struct fxp_control_data), NULL,
274 1.1 thorpej 0)) != 0) {
275 1.1 thorpej printf("%s: can't load control data DMA map, error = %d\n",
276 1.1 thorpej sc->sc_dev.dv_xname, error);
277 1.1 thorpej goto fail_3;
278 1.1 thorpej }
279 1.1 thorpej
280 1.1 thorpej /*
281 1.1 thorpej * Create the transmit buffer DMA maps.
282 1.1 thorpej */
283 1.1 thorpej for (i = 0; i < FXP_NTXCB; i++) {
284 1.1 thorpej if ((error = bus_dmamap_create(sc->sc_dmat, MCLBYTES,
285 1.1 thorpej FXP_NTXSEG, MCLBYTES, 0, 0,
286 1.2 thorpej &FXP_DSTX(sc, i)->txs_dmamap)) != 0) {
287 1.1 thorpej printf("%s: unable to create tx DMA map %d, "
288 1.1 thorpej "error = %d\n", sc->sc_dev.dv_xname, i, error);
289 1.1 thorpej goto fail_4;
290 1.1 thorpej }
291 1.1 thorpej }
292 1.1 thorpej
293 1.1 thorpej /*
294 1.1 thorpej * Create the receive buffer DMA maps.
295 1.1 thorpej */
296 1.1 thorpej for (i = 0; i < FXP_NRFABUFS; i++) {
297 1.1 thorpej if ((error = bus_dmamap_create(sc->sc_dmat, MCLBYTES, 1,
298 1.7 thorpej MCLBYTES, 0, 0, &sc->sc_rxmaps[i])) != 0) {
299 1.1 thorpej printf("%s: unable to create rx DMA map %d, "
300 1.1 thorpej "error = %d\n", sc->sc_dev.dv_xname, i, error);
301 1.1 thorpej goto fail_5;
302 1.1 thorpej }
303 1.1 thorpej }
304 1.1 thorpej
305 1.1 thorpej /* Initialize MAC address and media structures. */
306 1.1 thorpej fxp_get_info(sc, enaddr);
307 1.1 thorpej
308 1.1 thorpej printf("%s: Ethernet address %s, %s Mb/s\n", sc->sc_dev.dv_xname,
309 1.1 thorpej ether_sprintf(enaddr), sc->phy_10Mbps_only ? "10" : "10/100");
310 1.1 thorpej
311 1.1 thorpej ifp = &sc->sc_ethercom.ec_if;
312 1.1 thorpej
313 1.1 thorpej /*
314 1.1 thorpej * Get info about our media interface, and initialize it. Note
315 1.1 thorpej * the table terminates itself with a phy of -1, indicating
316 1.1 thorpej * that we're using MII.
317 1.1 thorpej */
318 1.1 thorpej for (fp = fxp_phytype_table; fp->fp_phy != -1; fp++)
319 1.1 thorpej if (fp->fp_phy == sc->phy_primary_device)
320 1.1 thorpej break;
321 1.1 thorpej (*fp->fp_init)(sc);
322 1.1 thorpej
323 1.1 thorpej bcopy(sc->sc_dev.dv_xname, ifp->if_xname, IFNAMSIZ);
324 1.1 thorpej ifp->if_softc = sc;
325 1.1 thorpej ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
326 1.1 thorpej ifp->if_ioctl = fxp_ioctl;
327 1.1 thorpej ifp->if_start = fxp_start;
328 1.1 thorpej ifp->if_watchdog = fxp_watchdog;
329 1.1 thorpej
330 1.1 thorpej /*
331 1.1 thorpej * Attach the interface.
332 1.1 thorpej */
333 1.1 thorpej if_attach(ifp);
334 1.1 thorpej ether_ifattach(ifp, enaddr);
335 1.1 thorpej #if NBPFILTER > 0
336 1.1 thorpej bpfattach(&sc->sc_ethercom.ec_if.if_bpf, ifp, DLT_EN10MB,
337 1.1 thorpej sizeof(struct ether_header));
338 1.1 thorpej #endif
339 1.1 thorpej #if NRND > 0
340 1.1 thorpej rnd_attach_source(&sc->rnd_source, sc->sc_dev.dv_xname,
341 1.1 thorpej RND_TYPE_NET, 0);
342 1.1 thorpej #endif
343 1.1 thorpej
344 1.1 thorpej /*
345 1.1 thorpej * Add shutdown hook so that DMA is disabled prior to reboot. Not
346 1.1 thorpej * doing do could allow DMA to corrupt kernel memory during the
347 1.1 thorpej * reboot before the driver initializes.
348 1.1 thorpej */
349 1.1 thorpej sc->sc_sdhook = shutdownhook_establish(fxp_shutdown, sc);
350 1.1 thorpej if (sc->sc_sdhook == NULL)
351 1.1 thorpej printf("%s: WARNING: unable to establish shutdown hook\n",
352 1.1 thorpej sc->sc_dev.dv_xname);
353 1.9 sommerfe /*
354 1.9 sommerfe * Add suspend hook, for similar reasons..
355 1.9 sommerfe */
356 1.9 sommerfe sc->sc_powerhook = powerhook_establish(fxp_power, sc);
357 1.9 sommerfe if (sc->sc_powerhook == NULL)
358 1.9 sommerfe printf("%s: WARNING: unable to establish power hook\n",
359 1.9 sommerfe sc->sc_dev.dv_xname);
360 1.1 thorpej return;
361 1.1 thorpej
362 1.1 thorpej /*
363 1.1 thorpej * Free any resources we've allocated during the failed attach
364 1.1 thorpej * attempt. Do this in reverse order and fall though.
365 1.1 thorpej */
366 1.1 thorpej fail_5:
367 1.1 thorpej for (i = 0; i < FXP_NRFABUFS; i++) {
368 1.7 thorpej if (sc->sc_rxmaps[i] != NULL)
369 1.7 thorpej bus_dmamap_destroy(sc->sc_dmat, sc->sc_rxmaps[i]);
370 1.1 thorpej }
371 1.1 thorpej fail_4:
372 1.1 thorpej for (i = 0; i < FXP_NTXCB; i++) {
373 1.2 thorpej if (FXP_DSTX(sc, i)->txs_dmamap != NULL)
374 1.1 thorpej bus_dmamap_destroy(sc->sc_dmat,
375 1.2 thorpej FXP_DSTX(sc, i)->txs_dmamap);
376 1.1 thorpej }
377 1.1 thorpej bus_dmamap_unload(sc->sc_dmat, sc->sc_dmamap);
378 1.1 thorpej fail_3:
379 1.1 thorpej bus_dmamap_destroy(sc->sc_dmat, sc->sc_dmamap);
380 1.1 thorpej fail_2:
381 1.2 thorpej bus_dmamem_unmap(sc->sc_dmat, (caddr_t)sc->sc_control_data,
382 1.1 thorpej sizeof(struct fxp_control_data));
383 1.1 thorpej fail_1:
384 1.1 thorpej bus_dmamem_free(sc->sc_dmat, &seg, rseg);
385 1.1 thorpej fail_0:
386 1.1 thorpej return;
387 1.1 thorpej }
388 1.1 thorpej
389 1.1 thorpej void
390 1.1 thorpej fxp_mii_initmedia(sc)
391 1.1 thorpej struct fxp_softc *sc;
392 1.1 thorpej {
393 1.1 thorpej
394 1.6 thorpej sc->sc_flags |= FXPF_MII;
395 1.6 thorpej
396 1.1 thorpej sc->sc_mii.mii_ifp = &sc->sc_ethercom.ec_if;
397 1.1 thorpej sc->sc_mii.mii_readreg = fxp_mdi_read;
398 1.1 thorpej sc->sc_mii.mii_writereg = fxp_mdi_write;
399 1.1 thorpej sc->sc_mii.mii_statchg = fxp_statchg;
400 1.1 thorpej ifmedia_init(&sc->sc_mii.mii_media, 0, fxp_mii_mediachange,
401 1.1 thorpej fxp_mii_mediastatus);
402 1.11 thorpej mii_phy_probe(&sc->sc_dev, &sc->sc_mii, 0xffffffff, MII_PHY_ANY,
403 1.11 thorpej MII_OFFSET_ANY);
404 1.1 thorpej if (LIST_FIRST(&sc->sc_mii.mii_phys) == NULL) {
405 1.1 thorpej ifmedia_add(&sc->sc_mii.mii_media, IFM_ETHER|IFM_NONE, 0, NULL);
406 1.1 thorpej ifmedia_set(&sc->sc_mii.mii_media, IFM_ETHER|IFM_NONE);
407 1.1 thorpej } else
408 1.1 thorpej ifmedia_set(&sc->sc_mii.mii_media, IFM_ETHER|IFM_AUTO);
409 1.1 thorpej }
410 1.1 thorpej
411 1.1 thorpej void
412 1.1 thorpej fxp_80c24_initmedia(sc)
413 1.1 thorpej struct fxp_softc *sc;
414 1.1 thorpej {
415 1.1 thorpej
416 1.1 thorpej /*
417 1.1 thorpej * The Seeq 80c24 AutoDUPLEX(tm) Ethernet Interface Adapter
418 1.1 thorpej * doesn't have a programming interface of any sort. The
419 1.1 thorpej * media is sensed automatically based on how the link partner
420 1.1 thorpej * is configured. This is, in essence, manual configuration.
421 1.1 thorpej */
422 1.1 thorpej printf("%s: Seeq 80c24 AutoDUPLEX media interface present\n",
423 1.1 thorpej sc->sc_dev.dv_xname);
424 1.1 thorpej ifmedia_init(&sc->sc_mii.mii_media, 0, fxp_80c24_mediachange,
425 1.1 thorpej fxp_80c24_mediastatus);
426 1.1 thorpej ifmedia_add(&sc->sc_mii.mii_media, IFM_ETHER|IFM_MANUAL, 0, NULL);
427 1.1 thorpej ifmedia_set(&sc->sc_mii.mii_media, IFM_ETHER|IFM_MANUAL);
428 1.1 thorpej }
429 1.1 thorpej
430 1.1 thorpej /*
431 1.1 thorpej * Device shutdown routine. Called at system shutdown after sync. The
432 1.1 thorpej * main purpose of this routine is to shut off receiver DMA so that
433 1.1 thorpej * kernel memory doesn't get clobbered during warmboot.
434 1.1 thorpej */
435 1.1 thorpej void
436 1.2 thorpej fxp_shutdown(arg)
437 1.2 thorpej void *arg;
438 1.1 thorpej {
439 1.2 thorpej struct fxp_softc *sc = arg;
440 1.1 thorpej
441 1.9 sommerfe /*
442 1.9 sommerfe * Since the system's going to halt shortly, don't bother
443 1.9 sommerfe * freeing mbufs.
444 1.9 sommerfe */
445 1.9 sommerfe fxp_stop(sc, 0);
446 1.9 sommerfe }
447 1.9 sommerfe /*
448 1.9 sommerfe * Power handler routine. Called when the system is transitioning
449 1.9 sommerfe * into/out of power save modes. As with fxp_shutdown, the main
450 1.9 sommerfe * purpose of this routine is to shut off receiver DMA so it doesn't
451 1.9 sommerfe * clobber kernel memory at the wrong time.
452 1.9 sommerfe */
453 1.9 sommerfe void
454 1.9 sommerfe fxp_power(why, arg)
455 1.9 sommerfe int why;
456 1.9 sommerfe void *arg;
457 1.9 sommerfe {
458 1.9 sommerfe struct fxp_softc *sc = arg;
459 1.9 sommerfe struct ifnet *ifp;
460 1.9 sommerfe int s;
461 1.9 sommerfe
462 1.9 sommerfe s = splnet();
463 1.9 sommerfe if (why != PWR_RESUME)
464 1.9 sommerfe fxp_stop(sc, 0);
465 1.9 sommerfe else {
466 1.9 sommerfe ifp = &sc->sc_ethercom.ec_if;
467 1.9 sommerfe if (ifp->if_flags & IFF_UP)
468 1.9 sommerfe fxp_init(sc);
469 1.9 sommerfe }
470 1.9 sommerfe splx(s);
471 1.1 thorpej }
472 1.1 thorpej
473 1.1 thorpej /*
474 1.1 thorpej * Initialize the interface media.
475 1.1 thorpej */
476 1.1 thorpej void
477 1.1 thorpej fxp_get_info(sc, enaddr)
478 1.1 thorpej struct fxp_softc *sc;
479 1.1 thorpej u_int8_t *enaddr;
480 1.1 thorpej {
481 1.1 thorpej u_int16_t data, myea[3];
482 1.1 thorpej
483 1.1 thorpej /*
484 1.1 thorpej * Reset to a stable state.
485 1.1 thorpej */
486 1.1 thorpej CSR_WRITE_4(sc, FXP_CSR_PORT, FXP_PORT_SELECTIVE_RESET);
487 1.1 thorpej DELAY(10);
488 1.1 thorpej
489 1.13 joda sc->sc_eeprom_size = 0;
490 1.13 joda fxp_autosize_eeprom(sc);
491 1.13 joda if(sc->sc_eeprom_size == 0) {
492 1.13 joda printf("%s: failed to detect EEPROM size", sc->sc_dev.dv_xname);
493 1.13 joda sc->sc_eeprom_size = 6; /* XXX panic here? */
494 1.10 sommerfe }
495 1.10 sommerfe #ifdef DEBUG
496 1.13 joda printf("%s: detected %d word EEPROM\n",
497 1.10 sommerfe sc->sc_dev.dv_xname,
498 1.10 sommerfe 1 << sc->sc_eeprom_size);
499 1.10 sommerfe #endif
500 1.10 sommerfe
501 1.10 sommerfe /*
502 1.1 thorpej * Get info about the primary PHY
503 1.1 thorpej */
504 1.1 thorpej fxp_read_eeprom(sc, &data, 6, 1);
505 1.1 thorpej sc->phy_primary_addr = data & 0xff;
506 1.1 thorpej sc->phy_primary_device = (data >> 8) & 0x3f;
507 1.1 thorpej sc->phy_10Mbps_only = data >> 15;
508 1.1 thorpej
509 1.1 thorpej /*
510 1.1 thorpej * Read MAC address.
511 1.1 thorpej */
512 1.1 thorpej fxp_read_eeprom(sc, myea, 0, 3);
513 1.1 thorpej bcopy(myea, enaddr, ETHER_ADDR_LEN);
514 1.1 thorpej }
515 1.1 thorpej
516 1.1 thorpej /*
517 1.13 joda * Figure out EEPROM size.
518 1.13 joda *
519 1.13 joda * 559's can have either 64-word or 256-word EEPROMs, the 558
520 1.13 joda * datasheet only talks about 64-word EEPROMs, and the 557 datasheet
521 1.13 joda * talks about the existance of 16 to 256 word EEPROMs.
522 1.13 joda *
523 1.13 joda * The only known sizes are 64 and 256, where the 256 version is used
524 1.13 joda * by CardBus cards to store CIS information.
525 1.13 joda *
526 1.13 joda * The address is shifted in msb-to-lsb, and after the last
527 1.13 joda * address-bit the EEPROM is supposed to output a `dummy zero' bit,
528 1.13 joda * after which follows the actual data. We try to detect this zero, by
529 1.13 joda * probing the data-out bit in the EEPROM control register just after
530 1.13 joda * having shifted in a bit. If the bit is zero, we assume we've
531 1.13 joda * shifted enough address bits. The data-out should be tri-state,
532 1.13 joda * before this, which should translate to a logical one.
533 1.13 joda *
534 1.13 joda * Other ways to do this would be to try to read a register with known
535 1.13 joda * contents with a varying number of address bits, but no such
536 1.13 joda * register seem to be available. The high bits of register 10 are 01
537 1.13 joda * on the 558 and 559, but apparently not on the 557.
538 1.13 joda *
539 1.13 joda * The Linux driver computes a checksum on the EEPROM data, but the
540 1.13 joda * value of this checksum is not very well documented.
541 1.13 joda */
542 1.13 joda
543 1.13 joda void
544 1.13 joda fxp_autosize_eeprom(sc)
545 1.13 joda struct fxp_softc *sc;
546 1.13 joda {
547 1.13 joda u_int16_t reg;
548 1.13 joda int x;
549 1.13 joda
550 1.13 joda CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS);
551 1.13 joda /*
552 1.13 joda * Shift in read opcode.
553 1.13 joda */
554 1.13 joda for (x = 3; x > 0; x--) {
555 1.13 joda if (FXP_EEPROM_OPC_READ & (1 << (x - 1))) {
556 1.13 joda reg = FXP_EEPROM_EECS | FXP_EEPROM_EEDI;
557 1.13 joda } else {
558 1.13 joda reg = FXP_EEPROM_EECS;
559 1.13 joda }
560 1.13 joda CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
561 1.13 joda CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL,
562 1.13 joda reg | FXP_EEPROM_EESK);
563 1.13 joda DELAY(1);
564 1.13 joda CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
565 1.13 joda DELAY(1);
566 1.13 joda }
567 1.13 joda /*
568 1.13 joda * Shift in address, wait for the dummy zero following a correct
569 1.13 joda * address shift.
570 1.13 joda */
571 1.13 joda for (x = 1; x <= 8; x++) {
572 1.13 joda CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS);
573 1.13 joda CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL,
574 1.13 joda FXP_EEPROM_EECS | FXP_EEPROM_EESK);
575 1.13 joda DELAY(1);
576 1.13 joda if((CSR_READ_2(sc, FXP_CSR_EEPROMCONTROL) &
577 1.13 joda FXP_EEPROM_EEDO) == 0)
578 1.13 joda break;
579 1.13 joda CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS);
580 1.13 joda DELAY(1);
581 1.13 joda }
582 1.13 joda CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, 0);
583 1.13 joda DELAY(1);
584 1.13 joda if(x != 6 && x != 8) {
585 1.13 joda #ifdef DEBUG
586 1.13 joda printf("%s: strange EEPROM size (%d)\n",
587 1.13 joda sc->sc_dev.dv_xname, 1 << x);
588 1.13 joda #endif
589 1.13 joda } else
590 1.13 joda sc->sc_eeprom_size = x;
591 1.13 joda }
592 1.13 joda
593 1.13 joda /*
594 1.1 thorpej * Read from the serial EEPROM. Basically, you manually shift in
595 1.1 thorpej * the read opcode (one bit at a time) and then shift in the address,
596 1.1 thorpej * and then you shift out the data (all of this one bit at a time).
597 1.1 thorpej * The word size is 16 bits, so you have to provide the address for
598 1.1 thorpej * every 16 bits of data.
599 1.1 thorpej */
600 1.1 thorpej void
601 1.1 thorpej fxp_read_eeprom(sc, data, offset, words)
602 1.1 thorpej struct fxp_softc *sc;
603 1.1 thorpej u_int16_t *data;
604 1.1 thorpej int offset;
605 1.1 thorpej int words;
606 1.1 thorpej {
607 1.1 thorpej u_int16_t reg;
608 1.1 thorpej int i, x;
609 1.1 thorpej
610 1.1 thorpej for (i = 0; i < words; i++) {
611 1.1 thorpej CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS);
612 1.1 thorpej /*
613 1.1 thorpej * Shift in read opcode.
614 1.1 thorpej */
615 1.1 thorpej for (x = 3; x > 0; x--) {
616 1.1 thorpej if (FXP_EEPROM_OPC_READ & (1 << (x - 1))) {
617 1.1 thorpej reg = FXP_EEPROM_EECS | FXP_EEPROM_EEDI;
618 1.1 thorpej } else {
619 1.1 thorpej reg = FXP_EEPROM_EECS;
620 1.1 thorpej }
621 1.1 thorpej CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
622 1.1 thorpej CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL,
623 1.1 thorpej reg | FXP_EEPROM_EESK);
624 1.1 thorpej DELAY(1);
625 1.1 thorpej CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
626 1.1 thorpej DELAY(1);
627 1.1 thorpej }
628 1.1 thorpej /*
629 1.1 thorpej * Shift in address.
630 1.1 thorpej */
631 1.10 sommerfe for (x = sc->sc_eeprom_size; x > 0; x--) {
632 1.1 thorpej if ((i + offset) & (1 << (x - 1))) {
633 1.13 joda reg = FXP_EEPROM_EECS | FXP_EEPROM_EEDI;
634 1.1 thorpej } else {
635 1.13 joda reg = FXP_EEPROM_EECS;
636 1.1 thorpej }
637 1.1 thorpej CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
638 1.1 thorpej CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL,
639 1.13 joda reg | FXP_EEPROM_EESK);
640 1.1 thorpej DELAY(1);
641 1.1 thorpej CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
642 1.1 thorpej DELAY(1);
643 1.1 thorpej }
644 1.1 thorpej reg = FXP_EEPROM_EECS;
645 1.1 thorpej data[i] = 0;
646 1.1 thorpej /*
647 1.1 thorpej * Shift out data.
648 1.1 thorpej */
649 1.1 thorpej for (x = 16; x > 0; x--) {
650 1.1 thorpej CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL,
651 1.1 thorpej reg | FXP_EEPROM_EESK);
652 1.1 thorpej DELAY(1);
653 1.1 thorpej if (CSR_READ_2(sc, FXP_CSR_EEPROMCONTROL) &
654 1.1 thorpej FXP_EEPROM_EEDO)
655 1.1 thorpej data[i] |= (1 << (x - 1));
656 1.1 thorpej CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
657 1.1 thorpej DELAY(1);
658 1.1 thorpej }
659 1.1 thorpej CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, 0);
660 1.1 thorpej DELAY(1);
661 1.1 thorpej }
662 1.1 thorpej }
663 1.1 thorpej
664 1.1 thorpej /*
665 1.1 thorpej * Start packet transmission on the interface.
666 1.1 thorpej */
667 1.1 thorpej void
668 1.1 thorpej fxp_start(ifp)
669 1.1 thorpej struct ifnet *ifp;
670 1.1 thorpej {
671 1.1 thorpej struct fxp_softc *sc = ifp->if_softc;
672 1.2 thorpej struct mbuf *m0, *m;
673 1.2 thorpej struct fxp_cb_tx *txd;
674 1.2 thorpej struct fxp_txsoft *txs;
675 1.2 thorpej struct fxp_tbdlist *tbd;
676 1.1 thorpej bus_dmamap_t dmamap;
677 1.2 thorpej int error, lasttx, nexttx, opending, seg;
678 1.1 thorpej
679 1.1 thorpej /*
680 1.8 thorpej * If we want a re-init, bail out now.
681 1.1 thorpej */
682 1.8 thorpej if (sc->sc_flags & FXPF_WANTINIT) {
683 1.1 thorpej ifp->if_flags |= IFF_OACTIVE;
684 1.1 thorpej return;
685 1.1 thorpej }
686 1.1 thorpej
687 1.8 thorpej if ((ifp->if_flags & (IFF_RUNNING|IFF_OACTIVE)) != IFF_RUNNING)
688 1.8 thorpej return;
689 1.8 thorpej
690 1.1 thorpej /*
691 1.2 thorpej * Remember the previous txpending and the current lasttx.
692 1.1 thorpej */
693 1.2 thorpej opending = sc->sc_txpending;
694 1.2 thorpej lasttx = sc->sc_txlast;
695 1.1 thorpej
696 1.2 thorpej /*
697 1.2 thorpej * Loop through the send queue, setting up transmit descriptors
698 1.2 thorpej * until we drain the queue, or use up all available transmit
699 1.2 thorpej * descriptors.
700 1.2 thorpej */
701 1.2 thorpej while (sc->sc_txpending < FXP_NTXCB) {
702 1.1 thorpej /*
703 1.2 thorpej * Grab a packet off the queue.
704 1.1 thorpej */
705 1.2 thorpej IF_DEQUEUE(&ifp->if_snd, m0);
706 1.2 thorpej if (m0 == NULL)
707 1.2 thorpej break;
708 1.1 thorpej
709 1.1 thorpej /*
710 1.2 thorpej * Get the next available transmit descriptor.
711 1.1 thorpej */
712 1.2 thorpej nexttx = FXP_NEXTTX(sc->sc_txlast);
713 1.2 thorpej txd = FXP_CDTX(sc, nexttx);
714 1.2 thorpej tbd = FXP_CDTBD(sc, nexttx);
715 1.2 thorpej txs = FXP_DSTX(sc, nexttx);
716 1.2 thorpej dmamap = txs->txs_dmamap;
717 1.1 thorpej
718 1.1 thorpej /*
719 1.2 thorpej * Load the DMA map. If this fails, the packet either
720 1.2 thorpej * didn't fit in the allotted number of frags, or we were
721 1.2 thorpej * short on resources. In this case, we'll copy and try
722 1.2 thorpej * again.
723 1.1 thorpej */
724 1.2 thorpej if (bus_dmamap_load_mbuf(sc->sc_dmat, dmamap, m0,
725 1.2 thorpej BUS_DMA_NOWAIT) != 0) {
726 1.2 thorpej MGETHDR(m, M_DONTWAIT, MT_DATA);
727 1.2 thorpej if (m == NULL) {
728 1.2 thorpej printf("%s: unable to allocate Tx mbuf\n",
729 1.2 thorpej sc->sc_dev.dv_xname);
730 1.2 thorpej IF_PREPEND(&ifp->if_snd, m0);
731 1.2 thorpej break;
732 1.1 thorpej }
733 1.2 thorpej if (m0->m_pkthdr.len > MHLEN) {
734 1.2 thorpej MCLGET(m, M_DONTWAIT);
735 1.2 thorpej if ((m->m_flags & M_EXT) == 0) {
736 1.2 thorpej printf("%s: unable to allocate Tx "
737 1.2 thorpej "cluster\n", sc->sc_dev.dv_xname);
738 1.2 thorpej m_freem(m);
739 1.2 thorpej IF_PREPEND(&ifp->if_snd, m0);
740 1.2 thorpej break;
741 1.1 thorpej }
742 1.1 thorpej }
743 1.2 thorpej m_copydata(m0, 0, m0->m_pkthdr.len, mtod(m, caddr_t));
744 1.2 thorpej m->m_pkthdr.len = m->m_len = m0->m_pkthdr.len;
745 1.2 thorpej m_freem(m0);
746 1.2 thorpej m0 = m;
747 1.2 thorpej error = bus_dmamap_load_mbuf(sc->sc_dmat, dmamap,
748 1.2 thorpej m0, BUS_DMA_NOWAIT);
749 1.2 thorpej if (error) {
750 1.2 thorpej printf("%s: unable to load Tx buffer, "
751 1.2 thorpej "error = %d\n", sc->sc_dev.dv_xname, error);
752 1.2 thorpej IF_PREPEND(&ifp->if_snd, m0);
753 1.2 thorpej break;
754 1.2 thorpej }
755 1.2 thorpej }
756 1.1 thorpej
757 1.2 thorpej /* Initialize the fraglist. */
758 1.2 thorpej for (seg = 0; seg < dmamap->dm_nsegs; seg++) {
759 1.2 thorpej tbd->tbd_d[seg].tb_addr =
760 1.2 thorpej dmamap->dm_segs[seg].ds_addr;
761 1.2 thorpej tbd->tbd_d[seg].tb_size =
762 1.2 thorpej dmamap->dm_segs[seg].ds_len;
763 1.1 thorpej }
764 1.1 thorpej
765 1.2 thorpej FXP_CDTBDSYNC(sc, nexttx, BUS_DMASYNC_PREWRITE);
766 1.1 thorpej
767 1.2 thorpej /* Sync the DMA map. */
768 1.1 thorpej bus_dmamap_sync(sc->sc_dmat, dmamap, 0, dmamap->dm_mapsize,
769 1.1 thorpej BUS_DMASYNC_PREWRITE);
770 1.1 thorpej
771 1.1 thorpej /*
772 1.2 thorpej * Store a pointer to the packet so we can free it later.
773 1.1 thorpej */
774 1.2 thorpej txs->txs_mbuf = m0;
775 1.1 thorpej
776 1.1 thorpej /*
777 1.2 thorpej * Initialize the transmit descriptor.
778 1.1 thorpej */
779 1.2 thorpej txd->cb_status = 0;
780 1.2 thorpej txd->cb_command =
781 1.2 thorpej FXP_CB_COMMAND_XMIT | FXP_CB_COMMAND_SF;
782 1.2 thorpej txd->tx_threshold = tx_threshold;
783 1.2 thorpej txd->tbd_number = dmamap->dm_nsegs;
784 1.1 thorpej
785 1.2 thorpej FXP_CDTXSYNC(sc, nexttx,
786 1.2 thorpej BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
787 1.2 thorpej
788 1.2 thorpej /* Advance the tx pointer. */
789 1.2 thorpej sc->sc_txpending++;
790 1.2 thorpej sc->sc_txlast = nexttx;
791 1.1 thorpej
792 1.1 thorpej #if NBPFILTER > 0
793 1.1 thorpej /*
794 1.1 thorpej * Pass packet to bpf if there is a listener.
795 1.1 thorpej */
796 1.1 thorpej if (ifp->if_bpf)
797 1.2 thorpej bpf_mtap(ifp->if_bpf, m0);
798 1.1 thorpej #endif
799 1.1 thorpej }
800 1.1 thorpej
801 1.2 thorpej if (sc->sc_txpending == FXP_NTXCB) {
802 1.2 thorpej /* No more slots; notify upper layer. */
803 1.2 thorpej ifp->if_flags |= IFF_OACTIVE;
804 1.2 thorpej }
805 1.2 thorpej
806 1.2 thorpej if (sc->sc_txpending != opending) {
807 1.2 thorpej /*
808 1.2 thorpej * We enqueued packets. If the transmitter was idle,
809 1.2 thorpej * reset the txdirty pointer.
810 1.2 thorpej */
811 1.2 thorpej if (opending == 0)
812 1.2 thorpej sc->sc_txdirty = FXP_NEXTTX(lasttx);
813 1.2 thorpej
814 1.2 thorpej /*
815 1.2 thorpej * Cause the chip to interrupt and suspend command
816 1.2 thorpej * processing once the last packet we've enqueued
817 1.2 thorpej * has been transmitted.
818 1.2 thorpej */
819 1.2 thorpej FXP_CDTX(sc, sc->sc_txlast)->cb_command |=
820 1.2 thorpej FXP_CB_COMMAND_I | FXP_CB_COMMAND_S;
821 1.2 thorpej FXP_CDTXSYNC(sc, sc->sc_txlast,
822 1.2 thorpej BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
823 1.2 thorpej
824 1.2 thorpej /*
825 1.2 thorpej * The entire packet chain is set up. Clear the suspend bit
826 1.2 thorpej * on the command prior to the first packet we set up.
827 1.2 thorpej */
828 1.2 thorpej FXP_CDTXSYNC(sc, lasttx,
829 1.2 thorpej BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
830 1.2 thorpej FXP_CDTX(sc, lasttx)->cb_command &= ~FXP_CB_COMMAND_S;
831 1.2 thorpej FXP_CDTXSYNC(sc, lasttx,
832 1.2 thorpej BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
833 1.2 thorpej
834 1.2 thorpej /*
835 1.2 thorpej * Issue a Resume command in case the chip was suspended.
836 1.2 thorpej */
837 1.1 thorpej fxp_scb_wait(sc);
838 1.1 thorpej CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_CU_RESUME);
839 1.1 thorpej
840 1.2 thorpej /* Set a watchdog timer in case the chip flakes out. */
841 1.1 thorpej ifp->if_timer = 5;
842 1.1 thorpej }
843 1.1 thorpej }
844 1.1 thorpej
845 1.1 thorpej /*
846 1.1 thorpej * Process interface interrupts.
847 1.1 thorpej */
848 1.1 thorpej int
849 1.1 thorpej fxp_intr(arg)
850 1.1 thorpej void *arg;
851 1.1 thorpej {
852 1.1 thorpej struct fxp_softc *sc = arg;
853 1.2 thorpej struct ifnet *ifp = &sc->sc_ethercom.ec_if;
854 1.2 thorpej struct fxp_cb_tx *txd;
855 1.2 thorpej struct fxp_txsoft *txs;
856 1.7 thorpej struct mbuf *m, *m0;
857 1.7 thorpej bus_dmamap_t rxmap;
858 1.7 thorpej struct fxp_rfa *rfa;
859 1.7 thorpej struct ether_header *eh;
860 1.8 thorpej int i, claimed = 0;
861 1.7 thorpej u_int16_t len;
862 1.1 thorpej u_int8_t statack;
863 1.1 thorpej
864 1.9 sommerfe /*
865 1.9 sommerfe * If the interface isn't running, don't try to
866 1.9 sommerfe * service the interrupt.. just ack it and bail.
867 1.9 sommerfe */
868 1.9 sommerfe if ((ifp->if_flags & IFF_RUNNING) == 0) {
869 1.9 sommerfe statack = CSR_READ_1(sc, FXP_CSR_SCB_STATACK);
870 1.9 sommerfe if (statack) {
871 1.9 sommerfe claimed = 1;
872 1.9 sommerfe CSR_WRITE_1(sc, FXP_CSR_SCB_STATACK, statack);
873 1.9 sommerfe }
874 1.9 sommerfe return claimed;
875 1.9 sommerfe }
876 1.9 sommerfe
877 1.1 thorpej while ((statack = CSR_READ_1(sc, FXP_CSR_SCB_STATACK)) != 0) {
878 1.1 thorpej claimed = 1;
879 1.1 thorpej
880 1.1 thorpej /*
881 1.1 thorpej * First ACK all the interrupts in this pass.
882 1.1 thorpej */
883 1.1 thorpej CSR_WRITE_1(sc, FXP_CSR_SCB_STATACK, statack);
884 1.1 thorpej
885 1.1 thorpej /*
886 1.1 thorpej * Process receiver interrupts. If a no-resource (RNR)
887 1.1 thorpej * condition exists, get whatever packets we can and
888 1.1 thorpej * re-start the receiver.
889 1.1 thorpej */
890 1.1 thorpej if (statack & (FXP_SCB_STATACK_FR | FXP_SCB_STATACK_RNR)) {
891 1.1 thorpej rcvloop:
892 1.7 thorpej m = sc->sc_rxq.ifq_head;
893 1.7 thorpej rfa = FXP_MTORFA(m);
894 1.7 thorpej rxmap = M_GETCTX(m, bus_dmamap_t);
895 1.1 thorpej
896 1.7 thorpej FXP_RFASYNC(sc, m,
897 1.1 thorpej BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
898 1.1 thorpej
899 1.7 thorpej if ((rfa->rfa_status & FXP_RFA_STATUS_C) == 0) {
900 1.1 thorpej /*
901 1.7 thorpej * We have processed all of the
902 1.7 thorpej * receive buffers.
903 1.1 thorpej */
904 1.7 thorpej goto do_transmit;
905 1.7 thorpej }
906 1.7 thorpej
907 1.7 thorpej IF_DEQUEUE(&sc->sc_rxq, m);
908 1.7 thorpej
909 1.7 thorpej FXP_RXBUFSYNC(sc, m, BUS_DMASYNC_POSTREAD);
910 1.7 thorpej
911 1.7 thorpej len = rfa->actual_size & (m->m_ext.ext_size - 1);
912 1.1 thorpej
913 1.7 thorpej if (len < sizeof(struct ether_header)) {
914 1.1 thorpej /*
915 1.7 thorpej * Runt packet; drop it now.
916 1.1 thorpej */
917 1.7 thorpej FXP_INIT_RFABUF(sc, m);
918 1.7 thorpej goto rcvloop;
919 1.7 thorpej }
920 1.7 thorpej
921 1.7 thorpej /*
922 1.7 thorpej * If the packet is small enough to fit in a
923 1.7 thorpej * single header mbuf, allocate one and copy
924 1.7 thorpej * the data into it. This greatly reduces
925 1.7 thorpej * memory consumption when we receive lots
926 1.7 thorpej * of small packets.
927 1.7 thorpej *
928 1.7 thorpej * Otherwise, we add a new buffer to the receive
929 1.7 thorpej * chain. If this fails, we drop the packet and
930 1.7 thorpej * recycle the old buffer.
931 1.7 thorpej */
932 1.7 thorpej if (fxp_copy_small != 0 && len <= MHLEN) {
933 1.7 thorpej MGETHDR(m0, M_DONTWAIT, MT_DATA);
934 1.7 thorpej if (m == NULL)
935 1.7 thorpej goto dropit;
936 1.7 thorpej memcpy(mtod(m0, caddr_t),
937 1.7 thorpej mtod(m, caddr_t), len);
938 1.7 thorpej FXP_INIT_RFABUF(sc, m);
939 1.7 thorpej m = m0;
940 1.7 thorpej } else {
941 1.7 thorpej if (fxp_add_rfabuf(sc, rxmap, 1) != 0) {
942 1.7 thorpej dropit:
943 1.7 thorpej ifp->if_ierrors++;
944 1.7 thorpej FXP_INIT_RFABUF(sc, m);
945 1.7 thorpej goto rcvloop;
946 1.7 thorpej }
947 1.7 thorpej }
948 1.7 thorpej
949 1.7 thorpej m->m_pkthdr.rcvif = ifp;
950 1.7 thorpej m->m_pkthdr.len = m->m_len = len;
951 1.7 thorpej eh = mtod(m, struct ether_header *);
952 1.7 thorpej
953 1.1 thorpej #if NBPFILTER > 0
954 1.7 thorpej /*
955 1.7 thorpej * Pass this up to any BPF listeners, but only
956 1.7 thorpej * pass it up the stack it its for us.
957 1.7 thorpej */
958 1.7 thorpej if (ifp->if_bpf) {
959 1.7 thorpej bpf_mtap(ifp->if_bpf, m);
960 1.7 thorpej
961 1.7 thorpej if ((ifp->if_flags & IFF_PROMISC) != 0 &&
962 1.7 thorpej (rfa->rfa_status &
963 1.7 thorpej FXP_RFA_STATUS_IAMATCH) != 0 &&
964 1.7 thorpej (eh->ether_dhost[0] & 1) == 0) {
965 1.7 thorpej m_freem(m);
966 1.7 thorpej goto rcvloop;
967 1.1 thorpej }
968 1.1 thorpej }
969 1.7 thorpej #endif /* NBPFILTER > 0 */
970 1.7 thorpej
971 1.7 thorpej /* Pass it on. */
972 1.7 thorpej (*ifp->if_input)(ifp, m);
973 1.7 thorpej goto rcvloop;
974 1.7 thorpej }
975 1.7 thorpej
976 1.7 thorpej do_transmit:
977 1.7 thorpej if (statack & FXP_SCB_STATACK_RNR) {
978 1.7 thorpej rxmap = M_GETCTX(sc->sc_rxq.ifq_head, bus_dmamap_t);
979 1.7 thorpej fxp_scb_wait(sc);
980 1.7 thorpej CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL,
981 1.7 thorpej rxmap->dm_segs[0].ds_addr +
982 1.7 thorpej RFA_ALIGNMENT_FUDGE);
983 1.7 thorpej CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND,
984 1.7 thorpej FXP_SCB_COMMAND_RU_START);
985 1.1 thorpej }
986 1.7 thorpej
987 1.1 thorpej /*
988 1.1 thorpej * Free any finished transmit mbuf chains.
989 1.1 thorpej */
990 1.5 thorpej if (statack & (FXP_SCB_STATACK_CXTNO|FXP_SCB_STATACK_CNA)) {
991 1.2 thorpej ifp->if_flags &= ~IFF_OACTIVE;
992 1.2 thorpej for (i = sc->sc_txdirty; sc->sc_txpending != 0;
993 1.2 thorpej i = FXP_NEXTTX(i), sc->sc_txpending--) {
994 1.2 thorpej txd = FXP_CDTX(sc, i);
995 1.2 thorpej txs = FXP_DSTX(sc, i);
996 1.2 thorpej
997 1.2 thorpej FXP_CDTXSYNC(sc, i,
998 1.1 thorpej BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
999 1.2 thorpej
1000 1.2 thorpej if ((txd->cb_status & FXP_CB_STATUS_C) == 0)
1001 1.1 thorpej break;
1002 1.2 thorpej
1003 1.2 thorpej FXP_CDTBDSYNC(sc, i, BUS_DMASYNC_POSTWRITE);
1004 1.2 thorpej
1005 1.2 thorpej bus_dmamap_sync(sc->sc_dmat, txs->txs_dmamap,
1006 1.2 thorpej 0, txs->txs_dmamap->dm_mapsize,
1007 1.2 thorpej BUS_DMASYNC_POSTWRITE);
1008 1.2 thorpej bus_dmamap_unload(sc->sc_dmat, txs->txs_dmamap);
1009 1.2 thorpej m_freem(txs->txs_mbuf);
1010 1.2 thorpej txs->txs_mbuf = NULL;
1011 1.1 thorpej }
1012 1.2 thorpej
1013 1.2 thorpej /* Update the dirty transmit buffer pointer. */
1014 1.2 thorpej sc->sc_txdirty = i;
1015 1.2 thorpej
1016 1.2 thorpej /*
1017 1.2 thorpej * Cancel the watchdog timer if there are no pending
1018 1.2 thorpej * transmissions.
1019 1.2 thorpej */
1020 1.2 thorpej if (sc->sc_txpending == 0) {
1021 1.1 thorpej ifp->if_timer = 0;
1022 1.2 thorpej
1023 1.2 thorpej /*
1024 1.8 thorpej * If we want a re-init, do that now.
1025 1.2 thorpej */
1026 1.8 thorpej if (sc->sc_flags & FXPF_WANTINIT)
1027 1.8 thorpej (void) fxp_init(sc);
1028 1.1 thorpej }
1029 1.2 thorpej
1030 1.1 thorpej /*
1031 1.2 thorpej * Try to get more packets going.
1032 1.1 thorpej */
1033 1.2 thorpej fxp_start(ifp);
1034 1.1 thorpej }
1035 1.1 thorpej }
1036 1.1 thorpej
1037 1.1 thorpej #if NRND > 0
1038 1.1 thorpej if (claimed)
1039 1.1 thorpej rnd_add_uint32(&sc->rnd_source, statack);
1040 1.1 thorpej #endif
1041 1.1 thorpej return (claimed);
1042 1.1 thorpej }
1043 1.1 thorpej
1044 1.1 thorpej /*
1045 1.1 thorpej * Update packet in/out/collision statistics. The i82557 doesn't
1046 1.1 thorpej * allow you to access these counters without doing a fairly
1047 1.1 thorpej * expensive DMA to get _all_ of the statistics it maintains, so
1048 1.1 thorpej * we do this operation here only once per second. The statistics
1049 1.1 thorpej * counters in the kernel are updated from the previous dump-stats
1050 1.1 thorpej * DMA and then a new dump-stats DMA is started. The on-chip
1051 1.1 thorpej * counters are zeroed when the DMA completes. If we can't start
1052 1.1 thorpej * the DMA immediately, we don't wait - we just prepare to read
1053 1.1 thorpej * them again next time.
1054 1.1 thorpej */
1055 1.1 thorpej void
1056 1.1 thorpej fxp_tick(arg)
1057 1.1 thorpej void *arg;
1058 1.1 thorpej {
1059 1.1 thorpej struct fxp_softc *sc = arg;
1060 1.2 thorpej struct ifnet *ifp = &sc->sc_ethercom.ec_if;
1061 1.2 thorpej struct fxp_stats *sp = &sc->sc_control_data->fcd_stats;
1062 1.8 thorpej int s;
1063 1.2 thorpej
1064 1.2 thorpej s = splnet();
1065 1.2 thorpej
1066 1.1 thorpej ifp->if_opackets += sp->tx_good;
1067 1.1 thorpej ifp->if_collisions += sp->tx_total_collisions;
1068 1.1 thorpej if (sp->rx_good) {
1069 1.1 thorpej ifp->if_ipackets += sp->rx_good;
1070 1.7 thorpej sc->sc_rxidle = 0;
1071 1.1 thorpej } else {
1072 1.7 thorpej sc->sc_rxidle++;
1073 1.1 thorpej }
1074 1.1 thorpej ifp->if_ierrors +=
1075 1.1 thorpej sp->rx_crc_errors +
1076 1.1 thorpej sp->rx_alignment_errors +
1077 1.1 thorpej sp->rx_rnr_errors +
1078 1.1 thorpej sp->rx_overrun_errors;
1079 1.1 thorpej /*
1080 1.1 thorpej * If any transmit underruns occured, bump up the transmit
1081 1.1 thorpej * threshold by another 512 bytes (64 * 8).
1082 1.1 thorpej */
1083 1.1 thorpej if (sp->tx_underruns) {
1084 1.1 thorpej ifp->if_oerrors += sp->tx_underruns;
1085 1.1 thorpej if (tx_threshold < 192)
1086 1.1 thorpej tx_threshold += 64;
1087 1.1 thorpej }
1088 1.1 thorpej
1089 1.1 thorpej /*
1090 1.1 thorpej * If we haven't received any packets in FXP_MAC_RX_IDLE seconds,
1091 1.1 thorpej * then assume the receiver has locked up and attempt to clear
1092 1.8 thorpej * the condition by reprogramming the multicast filter (actually,
1093 1.8 thorpej * resetting the interface). This is a work-around for a bug in
1094 1.8 thorpej * the 82557 where the receiver locks up if it gets certain types
1095 1.8 thorpej * of garbage in the syncronization bits prior to the packet header.
1096 1.8 thorpej * This bug is supposed to only occur in 10Mbps mode, but has been
1097 1.8 thorpej * seen to occur in 100Mbps mode as well (perhaps due to a 10/100
1098 1.8 thorpej * speed transition).
1099 1.1 thorpej */
1100 1.7 thorpej if (sc->sc_rxidle > FXP_MAX_RX_IDLE) {
1101 1.8 thorpej (void) fxp_init(sc);
1102 1.8 thorpej splx(s);
1103 1.8 thorpej return;
1104 1.1 thorpej }
1105 1.1 thorpej /*
1106 1.1 thorpej * If there is no pending command, start another stats
1107 1.1 thorpej * dump. Otherwise punt for now.
1108 1.1 thorpej */
1109 1.1 thorpej if (CSR_READ_1(sc, FXP_CSR_SCB_COMMAND) == 0) {
1110 1.1 thorpej /*
1111 1.1 thorpej * Start another stats dump.
1112 1.1 thorpej */
1113 1.1 thorpej CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND,
1114 1.1 thorpej FXP_SCB_COMMAND_CU_DUMPRESET);
1115 1.1 thorpej } else {
1116 1.1 thorpej /*
1117 1.1 thorpej * A previous command is still waiting to be accepted.
1118 1.1 thorpej * Just zero our copy of the stats and wait for the
1119 1.1 thorpej * next timer event to update them.
1120 1.1 thorpej */
1121 1.1 thorpej sp->tx_good = 0;
1122 1.1 thorpej sp->tx_underruns = 0;
1123 1.1 thorpej sp->tx_total_collisions = 0;
1124 1.1 thorpej
1125 1.1 thorpej sp->rx_good = 0;
1126 1.1 thorpej sp->rx_crc_errors = 0;
1127 1.1 thorpej sp->rx_alignment_errors = 0;
1128 1.1 thorpej sp->rx_rnr_errors = 0;
1129 1.1 thorpej sp->rx_overrun_errors = 0;
1130 1.1 thorpej }
1131 1.1 thorpej
1132 1.6 thorpej if (sc->sc_flags & FXPF_MII) {
1133 1.6 thorpej /* Tick the MII clock. */
1134 1.6 thorpej mii_tick(&sc->sc_mii);
1135 1.6 thorpej }
1136 1.2 thorpej
1137 1.1 thorpej splx(s);
1138 1.1 thorpej
1139 1.1 thorpej /*
1140 1.1 thorpej * Schedule another timeout one second from now.
1141 1.1 thorpej */
1142 1.1 thorpej timeout(fxp_tick, sc, hz);
1143 1.1 thorpej }
1144 1.1 thorpej
1145 1.1 thorpej /*
1146 1.7 thorpej * Drain the receive queue.
1147 1.7 thorpej */
1148 1.7 thorpej void
1149 1.7 thorpej fxp_rxdrain(sc)
1150 1.7 thorpej struct fxp_softc *sc;
1151 1.7 thorpej {
1152 1.7 thorpej bus_dmamap_t rxmap;
1153 1.7 thorpej struct mbuf *m;
1154 1.7 thorpej
1155 1.7 thorpej for (;;) {
1156 1.7 thorpej IF_DEQUEUE(&sc->sc_rxq, m);
1157 1.7 thorpej if (m == NULL)
1158 1.7 thorpej break;
1159 1.7 thorpej rxmap = M_GETCTX(m, bus_dmamap_t);
1160 1.7 thorpej bus_dmamap_unload(sc->sc_dmat, rxmap);
1161 1.7 thorpej FXP_RXMAP_PUT(sc, rxmap);
1162 1.7 thorpej m_freem(m);
1163 1.7 thorpej }
1164 1.7 thorpej }
1165 1.7 thorpej
1166 1.7 thorpej /*
1167 1.1 thorpej * Stop the interface. Cancels the statistics updater and resets
1168 1.1 thorpej * the interface.
1169 1.1 thorpej */
1170 1.1 thorpej void
1171 1.7 thorpej fxp_stop(sc, drain)
1172 1.1 thorpej struct fxp_softc *sc;
1173 1.7 thorpej int drain;
1174 1.1 thorpej {
1175 1.2 thorpej struct ifnet *ifp = &sc->sc_ethercom.ec_if;
1176 1.2 thorpej struct fxp_txsoft *txs;
1177 1.1 thorpej int i;
1178 1.1 thorpej
1179 1.1 thorpej /*
1180 1.9 sommerfe * Turn down interface (done early to avoid bad interactions
1181 1.9 sommerfe * between panics, shutdown hooks, and the watchdog timer)
1182 1.9 sommerfe */
1183 1.9 sommerfe ifp->if_timer = 0;
1184 1.9 sommerfe ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
1185 1.9 sommerfe
1186 1.9 sommerfe /*
1187 1.1 thorpej * Cancel stats updater.
1188 1.1 thorpej */
1189 1.1 thorpej untimeout(fxp_tick, sc);
1190 1.12 thorpej if (sc->sc_flags & FXPF_MII) {
1191 1.12 thorpej /* Down the MII. */
1192 1.12 thorpej mii_down(&sc->sc_mii);
1193 1.12 thorpej }
1194 1.1 thorpej
1195 1.1 thorpej /*
1196 1.1 thorpej * Issue software reset
1197 1.1 thorpej */
1198 1.1 thorpej CSR_WRITE_4(sc, FXP_CSR_PORT, FXP_PORT_SELECTIVE_RESET);
1199 1.1 thorpej DELAY(10);
1200 1.1 thorpej
1201 1.1 thorpej /*
1202 1.1 thorpej * Release any xmit buffers.
1203 1.1 thorpej */
1204 1.2 thorpej for (i = 0; i < FXP_NTXCB; i++) {
1205 1.2 thorpej txs = FXP_DSTX(sc, i);
1206 1.2 thorpej if (txs->txs_mbuf != NULL) {
1207 1.2 thorpej bus_dmamap_unload(sc->sc_dmat, txs->txs_dmamap);
1208 1.2 thorpej m_freem(txs->txs_mbuf);
1209 1.2 thorpej txs->txs_mbuf = NULL;
1210 1.1 thorpej }
1211 1.1 thorpej }
1212 1.2 thorpej sc->sc_txpending = 0;
1213 1.1 thorpej
1214 1.7 thorpej if (drain) {
1215 1.7 thorpej /*
1216 1.7 thorpej * Release the receive buffers.
1217 1.7 thorpej */
1218 1.7 thorpej fxp_rxdrain(sc);
1219 1.1 thorpej }
1220 1.1 thorpej
1221 1.1 thorpej }
1222 1.1 thorpej
1223 1.1 thorpej /*
1224 1.1 thorpej * Watchdog/transmission transmit timeout handler. Called when a
1225 1.1 thorpej * transmission is started on the interface, but no interrupt is
1226 1.1 thorpej * received before the timeout. This usually indicates that the
1227 1.1 thorpej * card has wedged for some reason.
1228 1.1 thorpej */
1229 1.1 thorpej void
1230 1.1 thorpej fxp_watchdog(ifp)
1231 1.1 thorpej struct ifnet *ifp;
1232 1.1 thorpej {
1233 1.1 thorpej struct fxp_softc *sc = ifp->if_softc;
1234 1.1 thorpej
1235 1.3 thorpej printf("%s: device timeout\n", sc->sc_dev.dv_xname);
1236 1.3 thorpej ifp->if_oerrors++;
1237 1.1 thorpej
1238 1.7 thorpej (void) fxp_init(sc);
1239 1.1 thorpej }
1240 1.1 thorpej
1241 1.2 thorpej /*
1242 1.2 thorpej * Initialize the interface. Must be called at splnet().
1243 1.2 thorpej */
1244 1.7 thorpej int
1245 1.2 thorpej fxp_init(sc)
1246 1.2 thorpej struct fxp_softc *sc;
1247 1.1 thorpej {
1248 1.2 thorpej struct ifnet *ifp = &sc->sc_ethercom.ec_if;
1249 1.1 thorpej struct fxp_cb_config *cbp;
1250 1.1 thorpej struct fxp_cb_ias *cb_ias;
1251 1.2 thorpej struct fxp_cb_tx *txd;
1252 1.7 thorpej bus_dmamap_t rxmap;
1253 1.7 thorpej int i, prm, allm, error = 0;
1254 1.1 thorpej
1255 1.1 thorpej /*
1256 1.1 thorpej * Cancel any pending I/O
1257 1.1 thorpej */
1258 1.7 thorpej fxp_stop(sc, 0);
1259 1.1 thorpej
1260 1.2 thorpej sc->sc_flags = 0;
1261 1.1 thorpej
1262 1.1 thorpej /*
1263 1.1 thorpej * Initialize base of CBL and RFA memory. Loading with zero
1264 1.1 thorpej * sets it up for regular linear addressing.
1265 1.1 thorpej */
1266 1.2 thorpej fxp_scb_wait(sc);
1267 1.1 thorpej CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, 0);
1268 1.1 thorpej CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_CU_BASE);
1269 1.1 thorpej
1270 1.1 thorpej fxp_scb_wait(sc);
1271 1.1 thorpej CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_RU_BASE);
1272 1.1 thorpej
1273 1.1 thorpej /*
1274 1.2 thorpej * Initialize the multicast filter. Do this now, since we might
1275 1.2 thorpej * have to setup the config block differently.
1276 1.2 thorpej */
1277 1.3 thorpej fxp_mc_setup(sc);
1278 1.2 thorpej
1279 1.2 thorpej prm = (ifp->if_flags & IFF_PROMISC) ? 1 : 0;
1280 1.2 thorpej allm = (ifp->if_flags & IFF_ALLMULTI) ? 1 : 0;
1281 1.2 thorpej
1282 1.2 thorpej /*
1283 1.1 thorpej * Initialize base of dump-stats buffer.
1284 1.1 thorpej */
1285 1.1 thorpej fxp_scb_wait(sc);
1286 1.1 thorpej CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL,
1287 1.2 thorpej sc->sc_cddma + FXP_CDSTATSOFF);
1288 1.1 thorpej CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_CU_DUMP_ADR);
1289 1.1 thorpej
1290 1.2 thorpej cbp = &sc->sc_control_data->fcd_configcb;
1291 1.2 thorpej memset(cbp, 0, sizeof(struct fxp_cb_config));
1292 1.1 thorpej
1293 1.1 thorpej /*
1294 1.2 thorpej * This copy is kind of disgusting, but there are a bunch of must be
1295 1.1 thorpej * zero and must be one bits in this structure and this is the easiest
1296 1.1 thorpej * way to initialize them all to proper values.
1297 1.1 thorpej */
1298 1.2 thorpej memcpy(cbp, fxp_cb_config_template, sizeof(fxp_cb_config_template));
1299 1.1 thorpej
1300 1.1 thorpej cbp->cb_status = 0;
1301 1.1 thorpej cbp->cb_command = FXP_CB_COMMAND_CONFIG | FXP_CB_COMMAND_EL;
1302 1.1 thorpej cbp->link_addr = -1; /* (no) next command */
1303 1.1 thorpej cbp->byte_count = 22; /* (22) bytes to config */
1304 1.1 thorpej cbp->rx_fifo_limit = 8; /* rx fifo threshold (32 bytes) */
1305 1.1 thorpej cbp->tx_fifo_limit = 0; /* tx fifo threshold (0 bytes) */
1306 1.1 thorpej cbp->adaptive_ifs = 0; /* (no) adaptive interframe spacing */
1307 1.1 thorpej cbp->rx_dma_bytecount = 0; /* (no) rx DMA max */
1308 1.1 thorpej cbp->tx_dma_bytecount = 0; /* (no) tx DMA max */
1309 1.1 thorpej cbp->dma_bce = 0; /* (disable) dma max counters */
1310 1.1 thorpej cbp->late_scb = 0; /* (don't) defer SCB update */
1311 1.1 thorpej cbp->tno_int = 0; /* (disable) tx not okay interrupt */
1312 1.4 thorpej cbp->ci_int = 1; /* interrupt on CU idle */
1313 1.1 thorpej cbp->save_bf = prm; /* save bad frames */
1314 1.1 thorpej cbp->disc_short_rx = !prm; /* discard short packets */
1315 1.1 thorpej cbp->underrun_retry = 1; /* retry mode (1) on DMA underrun */
1316 1.1 thorpej cbp->mediatype = !sc->phy_10Mbps_only; /* interface mode */
1317 1.1 thorpej cbp->nsai = 1; /* (don't) disable source addr insert */
1318 1.1 thorpej cbp->preamble_length = 2; /* (7 byte) preamble */
1319 1.1 thorpej cbp->loopback = 0; /* (don't) loopback */
1320 1.1 thorpej cbp->linear_priority = 0; /* (normal CSMA/CD operation) */
1321 1.1 thorpej cbp->linear_pri_mode = 0; /* (wait after xmit only) */
1322 1.1 thorpej cbp->interfrm_spacing = 6; /* (96 bits of) interframe spacing */
1323 1.1 thorpej cbp->promiscuous = prm; /* promiscuous mode */
1324 1.1 thorpej cbp->bcast_disable = 0; /* (don't) disable broadcasts */
1325 1.1 thorpej cbp->crscdt = 0; /* (CRS only) */
1326 1.1 thorpej cbp->stripping = !prm; /* truncate rx packet to byte count */
1327 1.1 thorpej cbp->padding = 1; /* (do) pad short tx packets */
1328 1.1 thorpej cbp->rcv_crc_xfer = 0; /* (don't) xfer CRC to host */
1329 1.1 thorpej cbp->force_fdx = 0; /* (don't) force full duplex */
1330 1.1 thorpej cbp->fdx_pin_en = 1; /* (enable) FDX# pin */
1331 1.1 thorpej cbp->multi_ia = 0; /* (don't) accept multiple IAs */
1332 1.2 thorpej cbp->mc_all = allm; /* accept all multicasts */
1333 1.1 thorpej
1334 1.2 thorpej FXP_CDCONFIGSYNC(sc, BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
1335 1.1 thorpej
1336 1.1 thorpej /*
1337 1.1 thorpej * Start the config command/DMA.
1338 1.1 thorpej */
1339 1.1 thorpej fxp_scb_wait(sc);
1340 1.2 thorpej CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->sc_cddma + FXP_CDCONFIGOFF);
1341 1.1 thorpej CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_CU_START);
1342 1.1 thorpej /* ...and wait for it to complete. */
1343 1.2 thorpej do {
1344 1.2 thorpej FXP_CDCONFIGSYNC(sc,
1345 1.2 thorpej BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
1346 1.2 thorpej } while ((cbp->cb_status & FXP_CB_STATUS_C) == 0);
1347 1.1 thorpej
1348 1.1 thorpej /*
1349 1.2 thorpej * Initialize the station address.
1350 1.1 thorpej */
1351 1.2 thorpej cb_ias = &sc->sc_control_data->fcd_iascb;
1352 1.1 thorpej cb_ias->cb_status = 0;
1353 1.1 thorpej cb_ias->cb_command = FXP_CB_COMMAND_IAS | FXP_CB_COMMAND_EL;
1354 1.1 thorpej cb_ias->link_addr = -1;
1355 1.2 thorpej memcpy((void *)cb_ias->macaddr, LLADDR(ifp->if_sadl), ETHER_ADDR_LEN);
1356 1.1 thorpej
1357 1.2 thorpej FXP_CDIASSYNC(sc, BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
1358 1.1 thorpej
1359 1.1 thorpej /*
1360 1.1 thorpej * Start the IAS (Individual Address Setup) command/DMA.
1361 1.1 thorpej */
1362 1.1 thorpej fxp_scb_wait(sc);
1363 1.2 thorpej CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->sc_cddma + FXP_CDIASOFF);
1364 1.1 thorpej CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_CU_START);
1365 1.1 thorpej /* ...and wait for it to complete. */
1366 1.2 thorpej do {
1367 1.2 thorpej FXP_CDIASSYNC(sc,
1368 1.2 thorpej BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
1369 1.2 thorpej } while ((cb_ias->cb_status & FXP_CB_STATUS_C) == 0);
1370 1.1 thorpej
1371 1.1 thorpej /*
1372 1.2 thorpej * Initialize the transmit descriptor ring. txlast is initialized
1373 1.2 thorpej * to the end of the list so that it will wrap around to the first
1374 1.2 thorpej * descriptor when the first packet is transmitted.
1375 1.1 thorpej */
1376 1.1 thorpej for (i = 0; i < FXP_NTXCB; i++) {
1377 1.2 thorpej txd = FXP_CDTX(sc, i);
1378 1.2 thorpej memset(txd, 0, sizeof(struct fxp_cb_tx));
1379 1.2 thorpej txd->cb_command = FXP_CB_COMMAND_NOP | FXP_CB_COMMAND_S;
1380 1.2 thorpej txd->tbd_array_addr = FXP_CDTBDADDR(sc, i);
1381 1.2 thorpej txd->link_addr = FXP_CDTXADDR(sc, FXP_NEXTTX(i));
1382 1.2 thorpej FXP_CDTXSYNC(sc, i, BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
1383 1.2 thorpej }
1384 1.2 thorpej sc->sc_txpending = 0;
1385 1.2 thorpej sc->sc_txdirty = 0;
1386 1.2 thorpej sc->sc_txlast = FXP_NTXCB - 1;
1387 1.2 thorpej
1388 1.2 thorpej /*
1389 1.7 thorpej * Initialize the receive buffer list.
1390 1.7 thorpej */
1391 1.7 thorpej sc->sc_rxq.ifq_maxlen = FXP_NRFABUFS;
1392 1.7 thorpej while (sc->sc_rxq.ifq_len < FXP_NRFABUFS) {
1393 1.7 thorpej rxmap = FXP_RXMAP_GET(sc);
1394 1.7 thorpej if ((error = fxp_add_rfabuf(sc, rxmap, 0)) != 0) {
1395 1.7 thorpej printf("%s: unable to allocate or map rx "
1396 1.7 thorpej "buffer %d, error = %d\n",
1397 1.7 thorpej sc->sc_dev.dv_xname,
1398 1.7 thorpej sc->sc_rxq.ifq_len, error);
1399 1.7 thorpej /*
1400 1.7 thorpej * XXX Should attempt to run with fewer receive
1401 1.7 thorpej * XXX buffers instead of just failing.
1402 1.7 thorpej */
1403 1.7 thorpej FXP_RXMAP_PUT(sc, rxmap);
1404 1.7 thorpej fxp_rxdrain(sc);
1405 1.7 thorpej goto out;
1406 1.7 thorpej }
1407 1.7 thorpej }
1408 1.8 thorpej sc->sc_rxidle = 0;
1409 1.7 thorpej
1410 1.7 thorpej /*
1411 1.2 thorpej * Give the transmit ring to the chip. We do this by pointing
1412 1.2 thorpej * the chip at the last descriptor (which is a NOP|SUSPEND), and
1413 1.2 thorpej * issuing a start command. It will execute the NOP and then
1414 1.2 thorpej * suspend, pointing at the first descriptor.
1415 1.1 thorpej */
1416 1.1 thorpej fxp_scb_wait(sc);
1417 1.2 thorpej CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, FXP_CDTXADDR(sc, sc->sc_txlast));
1418 1.1 thorpej CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_CU_START);
1419 1.1 thorpej
1420 1.1 thorpej /*
1421 1.1 thorpej * Initialize receiver buffer area - RFA.
1422 1.1 thorpej */
1423 1.7 thorpej rxmap = M_GETCTX(sc->sc_rxq.ifq_head, bus_dmamap_t);
1424 1.1 thorpej fxp_scb_wait(sc);
1425 1.1 thorpej CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL,
1426 1.7 thorpej rxmap->dm_segs[0].ds_addr + RFA_ALIGNMENT_FUDGE);
1427 1.1 thorpej CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_RU_START);
1428 1.1 thorpej
1429 1.6 thorpej if (sc->sc_flags & FXPF_MII) {
1430 1.6 thorpej /*
1431 1.6 thorpej * Set current media.
1432 1.6 thorpej */
1433 1.6 thorpej mii_mediachg(&sc->sc_mii);
1434 1.6 thorpej }
1435 1.1 thorpej
1436 1.2 thorpej /*
1437 1.2 thorpej * ...all done!
1438 1.2 thorpej */
1439 1.1 thorpej ifp->if_flags |= IFF_RUNNING;
1440 1.1 thorpej ifp->if_flags &= ~IFF_OACTIVE;
1441 1.1 thorpej
1442 1.1 thorpej /*
1443 1.7 thorpej * Start the one second timer.
1444 1.1 thorpej */
1445 1.1 thorpej timeout(fxp_tick, sc, hz);
1446 1.2 thorpej
1447 1.2 thorpej /*
1448 1.2 thorpej * Attempt to start output on the interface.
1449 1.2 thorpej */
1450 1.2 thorpej fxp_start(ifp);
1451 1.7 thorpej
1452 1.7 thorpej out:
1453 1.7 thorpej if (error)
1454 1.7 thorpej printf("%s: interface not running\n", sc->sc_dev.dv_xname);
1455 1.7 thorpej return (error);
1456 1.1 thorpej }
1457 1.1 thorpej
1458 1.1 thorpej /*
1459 1.1 thorpej * Change media according to request.
1460 1.1 thorpej */
1461 1.1 thorpej int
1462 1.1 thorpej fxp_mii_mediachange(ifp)
1463 1.1 thorpej struct ifnet *ifp;
1464 1.1 thorpej {
1465 1.1 thorpej struct fxp_softc *sc = ifp->if_softc;
1466 1.1 thorpej
1467 1.1 thorpej if (ifp->if_flags & IFF_UP)
1468 1.1 thorpej mii_mediachg(&sc->sc_mii);
1469 1.1 thorpej return (0);
1470 1.1 thorpej }
1471 1.1 thorpej
1472 1.1 thorpej /*
1473 1.1 thorpej * Notify the world which media we're using.
1474 1.1 thorpej */
1475 1.1 thorpej void
1476 1.1 thorpej fxp_mii_mediastatus(ifp, ifmr)
1477 1.1 thorpej struct ifnet *ifp;
1478 1.1 thorpej struct ifmediareq *ifmr;
1479 1.1 thorpej {
1480 1.1 thorpej struct fxp_softc *sc = ifp->if_softc;
1481 1.1 thorpej
1482 1.10 sommerfe if(sc->sc_enabled == 0) {
1483 1.10 sommerfe ifmr->ifm_active = IFM_ETHER | IFM_NONE;
1484 1.10 sommerfe ifmr->ifm_status = 0;
1485 1.10 sommerfe return;
1486 1.10 sommerfe }
1487 1.10 sommerfe
1488 1.1 thorpej mii_pollstat(&sc->sc_mii);
1489 1.1 thorpej ifmr->ifm_status = sc->sc_mii.mii_media_status;
1490 1.1 thorpej ifmr->ifm_active = sc->sc_mii.mii_media_active;
1491 1.1 thorpej }
1492 1.1 thorpej
1493 1.1 thorpej int
1494 1.1 thorpej fxp_80c24_mediachange(ifp)
1495 1.1 thorpej struct ifnet *ifp;
1496 1.1 thorpej {
1497 1.1 thorpej
1498 1.1 thorpej /* Nothing to do here. */
1499 1.1 thorpej return (0);
1500 1.1 thorpej }
1501 1.1 thorpej
1502 1.1 thorpej void
1503 1.1 thorpej fxp_80c24_mediastatus(ifp, ifmr)
1504 1.1 thorpej struct ifnet *ifp;
1505 1.1 thorpej struct ifmediareq *ifmr;
1506 1.1 thorpej {
1507 1.1 thorpej struct fxp_softc *sc = ifp->if_softc;
1508 1.1 thorpej
1509 1.1 thorpej /*
1510 1.1 thorpej * Media is currently-selected media. We cannot determine
1511 1.1 thorpej * the link status.
1512 1.1 thorpej */
1513 1.1 thorpej ifmr->ifm_status = 0;
1514 1.1 thorpej ifmr->ifm_active = sc->sc_mii.mii_media.ifm_cur->ifm_media;
1515 1.1 thorpej }
1516 1.1 thorpej
1517 1.1 thorpej /*
1518 1.1 thorpej * Add a buffer to the end of the RFA buffer list.
1519 1.7 thorpej * Return 0 if successful, error code on failure.
1520 1.7 thorpej *
1521 1.1 thorpej * The RFA struct is stuck at the beginning of mbuf cluster and the
1522 1.1 thorpej * data pointer is fixed up to point just past it.
1523 1.1 thorpej */
1524 1.1 thorpej int
1525 1.7 thorpej fxp_add_rfabuf(sc, rxmap, unload)
1526 1.1 thorpej struct fxp_softc *sc;
1527 1.7 thorpej bus_dmamap_t rxmap;
1528 1.7 thorpej int unload;
1529 1.1 thorpej {
1530 1.7 thorpej struct mbuf *m;
1531 1.7 thorpej int error;
1532 1.1 thorpej
1533 1.7 thorpej MGETHDR(m, M_DONTWAIT, MT_DATA);
1534 1.7 thorpej if (m == NULL)
1535 1.7 thorpej return (ENOBUFS);
1536 1.1 thorpej
1537 1.7 thorpej MCLGET(m, M_DONTWAIT);
1538 1.7 thorpej if ((m->m_flags & M_EXT) == 0) {
1539 1.7 thorpej m_freem(m);
1540 1.7 thorpej return (ENOBUFS);
1541 1.1 thorpej }
1542 1.1 thorpej
1543 1.7 thorpej if (unload)
1544 1.7 thorpej bus_dmamap_unload(sc->sc_dmat, rxmap);
1545 1.1 thorpej
1546 1.7 thorpej M_SETCTX(m, rxmap);
1547 1.1 thorpej
1548 1.7 thorpej error = bus_dmamap_load(sc->sc_dmat, rxmap,
1549 1.7 thorpej m->m_ext.ext_buf, m->m_ext.ext_size, NULL, BUS_DMA_NOWAIT);
1550 1.7 thorpej if (error) {
1551 1.7 thorpej printf("%s: can't load rx DMA map %d, error = %d\n",
1552 1.7 thorpej sc->sc_dev.dv_xname, sc->sc_rxq.ifq_len, error);
1553 1.7 thorpej panic("fxp_add_rfabuf"); /* XXX */
1554 1.1 thorpej }
1555 1.1 thorpej
1556 1.7 thorpej FXP_INIT_RFABUF(sc, m);
1557 1.1 thorpej
1558 1.7 thorpej return (0);
1559 1.1 thorpej }
1560 1.1 thorpej
1561 1.1 thorpej volatile int
1562 1.1 thorpej fxp_mdi_read(self, phy, reg)
1563 1.1 thorpej struct device *self;
1564 1.1 thorpej int phy;
1565 1.1 thorpej int reg;
1566 1.1 thorpej {
1567 1.1 thorpej struct fxp_softc *sc = (struct fxp_softc *)self;
1568 1.1 thorpej int count = 10000;
1569 1.1 thorpej int value;
1570 1.1 thorpej
1571 1.1 thorpej CSR_WRITE_4(sc, FXP_CSR_MDICONTROL,
1572 1.1 thorpej (FXP_MDI_READ << 26) | (reg << 16) | (phy << 21));
1573 1.1 thorpej
1574 1.1 thorpej while (((value = CSR_READ_4(sc, FXP_CSR_MDICONTROL)) & 0x10000000) == 0
1575 1.1 thorpej && count--)
1576 1.1 thorpej DELAY(10);
1577 1.1 thorpej
1578 1.1 thorpej if (count <= 0)
1579 1.1 thorpej printf("%s: fxp_mdi_read: timed out\n", sc->sc_dev.dv_xname);
1580 1.1 thorpej
1581 1.1 thorpej return (value & 0xffff);
1582 1.1 thorpej }
1583 1.1 thorpej
1584 1.1 thorpej void
1585 1.1 thorpej fxp_statchg(self)
1586 1.1 thorpej struct device *self;
1587 1.1 thorpej {
1588 1.1 thorpej
1589 1.1 thorpej /* XXX Update ifp->if_baudrate */
1590 1.1 thorpej }
1591 1.1 thorpej
1592 1.1 thorpej void
1593 1.1 thorpej fxp_mdi_write(self, phy, reg, value)
1594 1.1 thorpej struct device *self;
1595 1.1 thorpej int phy;
1596 1.1 thorpej int reg;
1597 1.1 thorpej int value;
1598 1.1 thorpej {
1599 1.1 thorpej struct fxp_softc *sc = (struct fxp_softc *)self;
1600 1.1 thorpej int count = 10000;
1601 1.1 thorpej
1602 1.1 thorpej CSR_WRITE_4(sc, FXP_CSR_MDICONTROL,
1603 1.1 thorpej (FXP_MDI_WRITE << 26) | (reg << 16) | (phy << 21) |
1604 1.1 thorpej (value & 0xffff));
1605 1.1 thorpej
1606 1.1 thorpej while((CSR_READ_4(sc, FXP_CSR_MDICONTROL) & 0x10000000) == 0 &&
1607 1.1 thorpej count--)
1608 1.1 thorpej DELAY(10);
1609 1.1 thorpej
1610 1.1 thorpej if (count <= 0)
1611 1.1 thorpej printf("%s: fxp_mdi_write: timed out\n", sc->sc_dev.dv_xname);
1612 1.1 thorpej }
1613 1.1 thorpej
1614 1.1 thorpej int
1615 1.1 thorpej fxp_ioctl(ifp, command, data)
1616 1.1 thorpej struct ifnet *ifp;
1617 1.1 thorpej u_long command;
1618 1.1 thorpej caddr_t data;
1619 1.1 thorpej {
1620 1.1 thorpej struct fxp_softc *sc = ifp->if_softc;
1621 1.1 thorpej struct ifreq *ifr = (struct ifreq *)data;
1622 1.1 thorpej struct ifaddr *ifa = (struct ifaddr *)data;
1623 1.8 thorpej int s, error = 0;
1624 1.1 thorpej
1625 1.1 thorpej s = splnet();
1626 1.1 thorpej
1627 1.1 thorpej switch (command) {
1628 1.1 thorpej case SIOCSIFADDR:
1629 1.10 sommerfe if ((error = fxp_enable(sc)) != 0)
1630 1.10 sommerfe break;
1631 1.1 thorpej ifp->if_flags |= IFF_UP;
1632 1.1 thorpej
1633 1.1 thorpej switch (ifa->ifa_addr->sa_family) {
1634 1.1 thorpej #ifdef INET
1635 1.1 thorpej case AF_INET:
1636 1.7 thorpej if ((error = fxp_init(sc)) != 0)
1637 1.7 thorpej break;
1638 1.1 thorpej arp_ifinit(ifp, ifa);
1639 1.1 thorpej break;
1640 1.2 thorpej #endif /* INET */
1641 1.1 thorpej #ifdef NS
1642 1.1 thorpej case AF_NS:
1643 1.1 thorpej {
1644 1.2 thorpej struct ns_addr *ina = &IA_SNS(ifa)->sns_addr;
1645 1.1 thorpej
1646 1.1 thorpej if (ns_nullhost(*ina))
1647 1.1 thorpej ina->x_host = *(union ns_host *)
1648 1.1 thorpej LLADDR(ifp->if_sadl);
1649 1.1 thorpej else
1650 1.1 thorpej bcopy(ina->x_host.c_host, LLADDR(ifp->if_sadl),
1651 1.1 thorpej ifp->if_addrlen);
1652 1.1 thorpej /* Set new address. */
1653 1.7 thorpej error = fxp_init(sc);
1654 1.1 thorpej break;
1655 1.1 thorpej }
1656 1.2 thorpej #endif /* NS */
1657 1.1 thorpej default:
1658 1.7 thorpej error = fxp_init(sc);
1659 1.1 thorpej break;
1660 1.1 thorpej }
1661 1.1 thorpej break;
1662 1.1 thorpej
1663 1.1 thorpej case SIOCSIFMTU:
1664 1.1 thorpej if (ifr->ifr_mtu > ETHERMTU)
1665 1.1 thorpej error = EINVAL;
1666 1.1 thorpej else
1667 1.1 thorpej ifp->if_mtu = ifr->ifr_mtu;
1668 1.1 thorpej break;
1669 1.1 thorpej
1670 1.1 thorpej case SIOCSIFFLAGS:
1671 1.2 thorpej if ((ifp->if_flags & IFF_UP) == 0 &&
1672 1.2 thorpej (ifp->if_flags & IFF_RUNNING) != 0) {
1673 1.2 thorpej /*
1674 1.2 thorpej * If interface is marked down and it is running, then
1675 1.2 thorpej * stop it.
1676 1.2 thorpej */
1677 1.7 thorpej fxp_stop(sc, 1);
1678 1.10 sommerfe fxp_disable(sc);
1679 1.2 thorpej } else if ((ifp->if_flags & IFF_UP) != 0 &&
1680 1.2 thorpej (ifp->if_flags & IFF_RUNNING) == 0) {
1681 1.2 thorpej /*
1682 1.2 thorpej * If interface is marked up and it is stopped, then
1683 1.2 thorpej * start it.
1684 1.2 thorpej */
1685 1.10 sommerfe if((error = fxp_enable(sc)) != 0)
1686 1.10 sommerfe break;
1687 1.7 thorpej error = fxp_init(sc);
1688 1.2 thorpej } else if ((ifp->if_flags & IFF_UP) != 0) {
1689 1.2 thorpej /*
1690 1.2 thorpej * Reset the interface to pick up change in any other
1691 1.2 thorpej * flags that affect the hardware state.
1692 1.2 thorpej */
1693 1.10 sommerfe if((error = fxp_enable(sc)) != 0)
1694 1.10 sommerfe break;
1695 1.7 thorpej error = fxp_init(sc);
1696 1.1 thorpej }
1697 1.1 thorpej break;
1698 1.1 thorpej
1699 1.1 thorpej case SIOCADDMULTI:
1700 1.1 thorpej case SIOCDELMULTI:
1701 1.10 sommerfe if(sc->sc_enabled == 0) {
1702 1.10 sommerfe error = EIO;
1703 1.10 sommerfe break;
1704 1.10 sommerfe }
1705 1.1 thorpej error = (command == SIOCADDMULTI) ?
1706 1.1 thorpej ether_addmulti(ifr, &sc->sc_ethercom) :
1707 1.1 thorpej ether_delmulti(ifr, &sc->sc_ethercom);
1708 1.1 thorpej
1709 1.1 thorpej if (error == ENETRESET) {
1710 1.1 thorpej /*
1711 1.1 thorpej * Multicast list has changed; set the hardware
1712 1.1 thorpej * filter accordingly.
1713 1.1 thorpej */
1714 1.8 thorpej if (sc->sc_txpending) {
1715 1.8 thorpej sc->sc_flags |= FXPF_WANTINIT;
1716 1.8 thorpej error = 0;
1717 1.8 thorpej } else
1718 1.7 thorpej error = fxp_init(sc);
1719 1.1 thorpej }
1720 1.1 thorpej break;
1721 1.1 thorpej
1722 1.1 thorpej case SIOCSIFMEDIA:
1723 1.1 thorpej case SIOCGIFMEDIA:
1724 1.1 thorpej error = ifmedia_ioctl(ifp, ifr, &sc->sc_mii.mii_media, command);
1725 1.1 thorpej break;
1726 1.1 thorpej
1727 1.1 thorpej default:
1728 1.1 thorpej error = EINVAL;
1729 1.2 thorpej break;
1730 1.1 thorpej }
1731 1.2 thorpej
1732 1.2 thorpej splx(s);
1733 1.1 thorpej return (error);
1734 1.1 thorpej }
1735 1.1 thorpej
1736 1.1 thorpej /*
1737 1.1 thorpej * Program the multicast filter.
1738 1.1 thorpej *
1739 1.2 thorpej * This function must be called at splnet().
1740 1.1 thorpej */
1741 1.1 thorpej void
1742 1.3 thorpej fxp_mc_setup(sc)
1743 1.1 thorpej struct fxp_softc *sc;
1744 1.1 thorpej {
1745 1.2 thorpej struct fxp_cb_mcs *mcsp = &sc->sc_control_data->fcd_mcscb;
1746 1.2 thorpej struct ifnet *ifp = &sc->sc_ethercom.ec_if;
1747 1.1 thorpej struct ethercom *ec = &sc->sc_ethercom;
1748 1.1 thorpej struct ether_multi *enm;
1749 1.1 thorpej struct ether_multistep step;
1750 1.1 thorpej int nmcasts;
1751 1.1 thorpej
1752 1.8 thorpej #ifdef DIAGNOSTIC
1753 1.8 thorpej if (sc->sc_txpending)
1754 1.8 thorpej panic("fxp_mc_setup: pending transmissions");
1755 1.8 thorpej #endif
1756 1.2 thorpej
1757 1.2 thorpej ifp->if_flags &= ~IFF_ALLMULTI;
1758 1.1 thorpej
1759 1.1 thorpej /*
1760 1.1 thorpej * Initialize multicast setup descriptor.
1761 1.1 thorpej */
1762 1.1 thorpej nmcasts = 0;
1763 1.2 thorpej ETHER_FIRST_MULTI(step, ec, enm);
1764 1.2 thorpej while (enm != NULL) {
1765 1.2 thorpej /*
1766 1.2 thorpej * Check for too many multicast addresses or if we're
1767 1.2 thorpej * listening to a range. Either way, we simply have
1768 1.2 thorpej * to accept all multicasts.
1769 1.2 thorpej */
1770 1.2 thorpej if (nmcasts >= MAXMCADDR ||
1771 1.2 thorpej memcmp(enm->enm_addrlo, enm->enm_addrhi,
1772 1.2 thorpej ETHER_ADDR_LEN) != 0) {
1773 1.1 thorpej /*
1774 1.2 thorpej * Callers of this function must do the
1775 1.2 thorpej * right thing with this. If we're called
1776 1.2 thorpej * from outside fxp_init(), the caller must
1777 1.2 thorpej * detect if the state if IFF_ALLMULTI changes.
1778 1.2 thorpej * If it does, the caller must then call
1779 1.2 thorpej * fxp_init(), since allmulti is handled by
1780 1.2 thorpej * the config block.
1781 1.1 thorpej */
1782 1.2 thorpej ifp->if_flags |= IFF_ALLMULTI;
1783 1.2 thorpej return;
1784 1.1 thorpej }
1785 1.2 thorpej memcpy((void *)&mcsp->mc_addr[nmcasts][0], enm->enm_addrlo,
1786 1.2 thorpej ETHER_ADDR_LEN);
1787 1.2 thorpej nmcasts++;
1788 1.2 thorpej ETHER_NEXT_MULTI(step, enm);
1789 1.2 thorpej }
1790 1.2 thorpej
1791 1.2 thorpej mcsp->cb_status = 0;
1792 1.8 thorpej mcsp->cb_command = FXP_CB_COMMAND_MCAS | FXP_CB_COMMAND_EL;
1793 1.3 thorpej mcsp->link_addr = FXP_CDTXADDR(sc, FXP_NEXTTX(sc->sc_txlast));
1794 1.2 thorpej mcsp->mc_cnt = nmcasts * ETHER_ADDR_LEN;
1795 1.1 thorpej
1796 1.2 thorpej FXP_CDMCSSYNC(sc, BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
1797 1.1 thorpej
1798 1.1 thorpej /*
1799 1.2 thorpej * Wait until the command unit is not active. This should never
1800 1.2 thorpej * happen since nothing is queued, but make sure anyway.
1801 1.1 thorpej */
1802 1.1 thorpej while ((CSR_READ_1(sc, FXP_CSR_SCB_RUSCUS) >> 6) ==
1803 1.2 thorpej FXP_SCB_CUS_ACTIVE)
1804 1.2 thorpej /* nothing */ ;
1805 1.1 thorpej
1806 1.1 thorpej /*
1807 1.2 thorpej * Start the multicast setup command/DMA.
1808 1.1 thorpej */
1809 1.1 thorpej fxp_scb_wait(sc);
1810 1.2 thorpej CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->sc_cddma + FXP_CDMCSOFF);
1811 1.1 thorpej CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_CU_START);
1812 1.1 thorpej
1813 1.3 thorpej /* ...and wait for it to complete. */
1814 1.3 thorpej do {
1815 1.3 thorpej FXP_CDMCSSYNC(sc,
1816 1.3 thorpej BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
1817 1.3 thorpej } while ((mcsp->cb_status & FXP_CB_STATUS_C) == 0);
1818 1.10 sommerfe }
1819 1.10 sommerfe
1820 1.10 sommerfe int
1821 1.10 sommerfe fxp_enable(sc)
1822 1.10 sommerfe struct fxp_softc *sc;
1823 1.10 sommerfe {
1824 1.10 sommerfe
1825 1.10 sommerfe if (sc->sc_enabled == 0 && sc->sc_enable != NULL) {
1826 1.10 sommerfe if ((*sc->sc_enable)(sc) != 0) {
1827 1.10 sommerfe printf("%s: device enable failed\n",
1828 1.10 sommerfe sc->sc_dev.dv_xname);
1829 1.10 sommerfe return (EIO);
1830 1.10 sommerfe }
1831 1.10 sommerfe }
1832 1.10 sommerfe
1833 1.10 sommerfe sc->sc_enabled = 1;
1834 1.10 sommerfe
1835 1.10 sommerfe return 0;
1836 1.10 sommerfe }
1837 1.10 sommerfe
1838 1.10 sommerfe void
1839 1.10 sommerfe fxp_disable(sc)
1840 1.10 sommerfe struct fxp_softc *sc;
1841 1.10 sommerfe {
1842 1.10 sommerfe if (sc->sc_enabled != 0 && sc->sc_disable != NULL) {
1843 1.10 sommerfe (*sc->sc_disable)(sc);
1844 1.10 sommerfe sc->sc_enabled = 0;
1845 1.10 sommerfe }
1846 1.1 thorpej }
1847